Applied building physics: boundary conditions, building performance and material properties
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin
Ernst
2011
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIV, 308 S. Ill., graph. Darst. |
ISBN: | 9783433029626 |
Internformat
MARC
LEADER | 00000nam a2200000 c 4500 | ||
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020 | |a 9783433029626 |9 978-3-433-02962-6 | ||
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035 | |a (OCoLC)699255415 | ||
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264 | 1 | |a Berlin |b Ernst |c 2011 | |
300 | |a XIV, 308 S. |b Ill., graph. Darst. | ||
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Datensatz im Suchindex
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adam_text | IMAGE 1
CONTENTS
PREFACE XIII
0 INTRODUCTION 1
0.1 SUBJECT OF THE BOOK 1
0.2 BUILDING PHYSICS AND APPLIED BUILDING PHYSICS 1
0.3 UNITS AND SYMBOLS 2
0.4 REFERENCES 5
1 OUTDOOR AND INDOOR CONDITIONS 7
1.1 OVERVIEW 7
1.2 OUTDOOR CONDITIONS 7
1.2.1 DRY BULB (OR AIR) TEMPERATURE 8
1.2.2 SOLAR RADIATION 12
1.2.2.1 BEAM INSOLATION 14
1.2.2.2 DIFFUSE INSOLATION 16
1.2.2.3 REFLECTED INSOLATION 17
1.2.2.4 TOTAL INSOLATION 18
1.2.3 LONG WAVE RADIATION 19
1.2.4 RELATIVE HUMIDITY AND (PARTIAL WATER) VAPOUR PRESSURE 22
1.2.5 WIND 24
1.2.5.1 WIND SPEED 24
1.2.5.2 WIND PRESSURE 26
1.2.6 PRECIPITATION AND WIND-DRIVEN RAIN 27
1.2.6.1 PRECIPITATION 27
1.2.6.2 WIND DRIVEN RAIN 30
1.2.7 STANDARDIZED OUTSIDE CLIMATE VALUES 32
1.2.7.1 DESIGN TEMPERATURE 32
1.2.7.2 THERMAL REFERENCE YEAR 32
1.2.7.3 MOISTURE REFERENCE YEAR 34
1.2.7.4 EQUIVALENT OUTSIDE TEMPERATURE FOR CONDENSATION AND DRYING 36
1.2.7.5 VERY HOT SUMMER DAY, VERY COLD WINTER DAY 39
1.3 INDOOR CONDITIONS 39
1.3.1 DRY BULB (OR AIR) TEMPERATURE 39
1.3.1.1 IN GENERAL 39
1.3.1.2 MEASURED DATA 40
1.3.2 RELATIVE HUMIDITY AND (PARTIAL WATER) VAPOUR PRESSURE 42
1.3.2.1 IN GENERAL 42
1.3.2.2 MEASURED DATA 42
1.3.3 WATER VAPOUR RELEASE INDOORS 46
1.3.4 INDOOR CLIMATE CLASSES 47
1.3.5 INSIDE/OUTSIDE AIR PRESSURE DIFFERENTIALS 49
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/998580791
DIGITALISIERT DURCH
IMAGE 2
VIII CONTENTS
1.4 REFERENCES 49
2 PERFORMANCE METRICS AND ARRAYS 51
2.1 DEFINITIONS 51
2.2 FUNCTIONAL DEMANDS 51
2.3 PERFORMANCE REQUIREMENTS 51
2.4 SOME HISTORY 52
2.5 PERFORMANCE ARRAYS 53
2.5.1 OVERVIEW 53
2.5.2 IN DETAIL 55
2.5.2.1 FUNCTIONALITY 55
2.5.2.2 STRUCTURAL ADEQUACY 55
2.5.2.3 BUILDING PHYSICS RELATED QUALITY 55
2.5.2.4 FIRE SAFETY 55
2.5.2.5 DURABILITY 57
2.5.2.6 MAINTENANCE 57
2.5.2.7 COSTS 57
2.6 REFERENCES 57
3 FUNCTIONAL REQUIREMENTS AND PERFORMANCES AT THE BUILDING LEVEL 59
3.1 THERMAL COMFORT 59
3.1.1 IN GENERAL 59
3.1.2 PHYSIOLOGICAL BASIS 59
3.1.3 GLOBAL STEADY STATE THERMAL COMFORT 62
3.1.3.1 CLOTHING 62
3.1.3.2 HEAT FLOW BETWEEN THE BODY AND THE ENVIRONMENT 63
3.1.3.3 COMFORT EQUATIONS 64
3.1.3.4 COMFORT PARAMETERS 65
3.1.3.5 EQUIVALENT ENVIRONMENTS AND COMFORT TEMPERATURES 65
3.1.3.6 COMFORT APPRECIATION 67
3.1.4 LOCAL DISCOMFORT 71
3.1.4.1 DRAFT 71
3.1.4.2 VERTICAL AIR TEMPERATURE DIFFERENCE 71
3.1.4.3 RADIANT TEMPERATURE ASYMMETRY 72
3.1.4.4 FLOOR TEMPERATURE 73
3.1.5 TRANSIENT CONDITIONS 75
3.1.6 COMFORT-RELATED ENCLOSURE PERFORMANCE 75
3.2 HEALTH AND INDOOR ENVIRONMENTAL QUALITY 76
3.2.1 IN GENERAL 76
3.2.2 HEALTH 77
3.2.3 DEFINITIONS 77
3.2.4 RELATION BETWEEN POLLUTION OUTDOORS AND INDOORS 78
3.2.5 PHYSICAL, CHEMICAL AND BIOLOGICAL CONTAMINANTS 79
3.2.5.1 PROCESS RELATED 79
3.2.5.2 MATERIAL RELATED 80
IMAGE 3
CONTENTS IX
3.2.5.3 GROUND RELATED 82
3.2.5.4 COMBUSTION RELATED 83
3.2.6 BIO-GERMS 84
3.2.6.1 BACTERIA 84
3.2.6.2 MOULD 84
3.2.6.3 DUST MITES 86
3.2.6.4 INSECTS 87
3.2.6.5 RODENTS 88
3.2.6.6 PETS 88
3.2.7 HUMAN RELATED CONTAMINANTS 88
3.2.7.1 CARBON DIOXIDE (CO 2 ) 88
3.2.7.2 WATER VAPOUR 89
3.2.7.3 BIO-ODOURS 89
3.2.7 .4 ENVIRONMENTAL TOBACCO SMOKE 89
3.2.8 PERCEIVED INDOOR AIR QUALITY 91
3.2.8.1 ODOUR 91
3.2.8.2 INSIDE AIR ENTHALPY 92
3.2.9 SICK BUILDING SYNDROME 93
3.2.10 CONTAMINANT CONTROL BY VENTILATION 94
3.2.10.1 VENTILATION EFFECTIVENESS 94
3.2.10.2 VENTILATION NEEDS 94
3.2.11 VENTILATION REQUIREMENTS 99
3.3 ENERGY EFFICIENCY 100
3.3.1 IN GENERAL 100
3.3.2 SOME STATISTICS 101
3.3.3 END ENERGY USE IN BUILDINGS 102
3.3.3.1 LIGHTING AND APPLIANCES (FUNCTION) 103
3.3.3.2 DOMESTIC HOT WATER 104
3.3.3.3 SPACE HEATING, SPACE COOLING AND AIR CONDITIONING 105
3.3.4 SPACE HEATING 105
3.3.4.1 TERMINOLOGY 105
3.3.4.2 STEADY STATE ENERGY BALANCE FOR HEATING AT ZONE LEVEL 106
3.3.4.3 STEADY STATE ENERGY BALANCE FOR HEATING AT BUILDING LEVEL 112
3.3.5 PARAMETERS DEFINING THE NET ENERGY DEMAND FOR HEATING IN
RESIDENTIAL BUILDINGS 113 3.3.5.1 OVERVIEW 113
3.3.5.2 IN DETAIL 114
3.3.6 PARAMETERS DEFINING THE NET ENERGY DEMAND FOR COOLING IN
RESIDENTIAL BUILDINGS 129 3.3.7 GROSS ENERGY DEMAND, END ENERGY USE 131
3.3.8 RESIDENTIAL BUILDINGS RANKED IN TERMS OF ENERGY EFFICIENCY 131
3.3.8.1 INSULATED BUILDINGS 131
3.3.8.2 ENERGY EFFICIENT BUILDINGS 132
3.3.8.3 LOW ENERGY BUILDINGS 132
3.3.8.4 PASSIVE BUILDINGS 132
3.3.8.5 ZERO ENERGY BUILDINGS 133
3.3.8.6 ENERGY PLUS BUILDINGS 133
3.3.8.7 ENERGY AUTARKIC BUILDINGS 133
3.4 DURABILITY 133
3.4.1 IN GENERAL 133
IMAGE 4
X CONTENTS
3.4.2 LOADS 134
3.4.3 DAMAGE PATTERNS 135
3.4.3.1 DECREASE IN THERMAL QUALITY 135
3.4.3.2 DECREASE IN STRENGTH AND STIFFNESS 136
3.4.3.3 STRESS, STRAIN, DEFORMATION AND CRACKING 137
3.4.3.4 BIOLOGICAL DEGRADATION 139
3.4.3.5 FROST DAMAGE 142
3.4.3.6 SALT ATTACK 145
3.4.3.7 CHEMICAL ATTACK 149
3.4.3.8 CORROSION 151
3.5 LIFE CYCLE COSTS 152
3.5.1 IN GENERAL 152
3.5.2 TOTAL AND NET LIFE CYCLE COST 152
3.5.3 EXAMPLES 153
3.5.3.1 OPTIMAL INSULATION THICKNESS 153
3.5.3.2 WHOLE BUILDING OPTIMUM FROM AN ENERGY PERSPECTIVE 155
3.6 SUSTAINABILITY 161
3.6.1 IN GENERAL 161
3.6.2 LIFE CYCLE ANALYSIS 162
3.6.2.1 DEFINITION 162
3.6.2.2 IMPACTS 163
3.6.2.3 TOTAL ENERGY USE 163
3.6.2.4 TOTAL ENVIRONMENTAL LOAD 164
3.6.2.5 RECYCLING 164
3.6.3 HIGH PERFORMANCE BUILDINGS 165
3.7 REFERENCES 168
4 HEAT-AIR-MOISTURE PERFORMANCES AT THE ENVELOPE LEVEL 175
4.1 INTRODUCTION 175
4.2 AIR-TIGHTNESS 175
4.2.1 FLOW PATTERNS 175
4.2.2 PERFORMANCE REQUIREMENTS 177
4.2.2.1 AIR IN AND OUTFLOW 177
4.2.2.2 INSIDE AIR WASHING, WIND WASHING AND AIR LOOPING 177
4.3 THERMAL TRANSMITTANCE (U) 179
4.3.1 DEFINITIONS 179
4.3.1.1 ENVELOPE PARTS 179
4.3.1.2 ENVELOPE 179
4.3.2 BASIS FOR PERFORMANCE REQUIREMENTS 180
4.3.2.1 ENVELOPE PARTS 180
4.3.2.2 ENVELOPE 180
4.3.3 EXAMPLES OF PERFORMANCE REQUIREMENTS 180
4.3.3.1 ENVELOPE PARTS 180
4.3.3.2 ENVELOPE 180
4.4 TRANSIENT THERMAL RESPONSE 184
IMAGE 5
CONTENTS XI
4.4.1 PROPERTIES OF IMPORTANCE 184
4.4.1.1 OPAQUE ENVELOPE PARTS 184
4.4.1.2 TRANSPARENT ENVELOPE PARTS 185
4.4.2 PERFORMANCE REQUIREMENTS 185
4.4.2.1 OPAQUE ENVELOPE PARTS 185
4.4.2.2 TRANSPARENT ENVELOPE PARTS 185
4.4.3 CONSEQUENCES FOR THE BUILDING FABRIC 186
4.4.3.1 OPAQUE ENVELOPE PARTS 186
4.4.3.2 TRANSPARENT ENVELOPE PARTS 187
4.5 MOISTURE TOLERANCE 188
4.5.1 IN GENERAL 188
4.5.2 BUILT-IN MOISTURE 188
4.5.2.1 DEFINITION 188
4.5.2.2 REQUIREMENTS 188
4.5.2.3 CONSEQUENCES FOR THE BUILDING FABRIC 189
4.5.3 RAIN AND RAIN PENETRATION 191
4.5.3.1 DEFINITION 191
4.5.3.2 REQUIREMENTS 192
4.5.3.3 MODELLING 192
4.5.3.4 CONSEQUENCES FOR THE ENVELOPE 194
4.5.4 RISING DAMP 197
4.5.4.1 DEFINITION 197
4.5.4.2 REQUIREMENTS 197
4.5.4.3 MODELLING 197
4.5.4.4 CONSEQUENCES FOR THE BUILDING FABRIC 200
4.5.5 WATER HEADS 201
4.5.5.1 DEFINITION 201
4.5.5.2 REQUIREMENTS 202
4.5.5.3 MODELLING 202
4.5.5.4 CONSEQUENCES FOR THE BUILDING FABRIC 202
4.5.6 HYGROSCOPIC MOISTURE 203
4.5.6.1 DEFINITION 203
4.5.6.2 REQUIREMENTS 204
4.5.6.3 MODELLING 204
4.5.6.4 CONSEQUENCES FOR THE BUILDING FABRIC 204
4.5.7 SURFACE CONDENSATION 204
4.5.7.1 DEFINITION 204
4.5.7.2 REQUIREMENTS 204
4.5.7.3 MODELLING 205
4.5.7.4 CONSEQUENCES FOR THE BUILDING FABRIC 206
4.5.8 INTERSTITIAL CONDENSATION 206
4.5.8.1 DEFINITION 206
4.5.8.2 MODELLING 207
4.5.8.3 REQUIREMENTS 211
4.5.8.4 CONSEQUENCES FOR THE BUILDING FABRIC 211
4.5.8.5 REMARK 212
4.5.9 ALL SOURCES COMBINED 212
4.5.9.1 MODELLING 212
IMAGE 6
XII CONTENTS
4.5.9.2 REQUIREMENTS 213
4.5.9.3 WHERE ACTUAL MODELS FAIL 215
4.6 THERMAL BRIDGES 220
4.6.1 DEFINITION 220
4.6.2 REQUIREMENT 220
4.6.3 CONSEQUENCES FOR THE ENVELOPE 220
4.7 CONTACT COEFFICIENTS 221
4.8 HYGROTHERMAL STRESS AND STRAIN 221
4.9 EXAMPLE OF PERFORMANCE CONTROL: TIMBER-FRAMED WALLS 222
4.9.1 ASSEMBLY (FROM INSIDE TO OUTSIDE) 222
4.9.2 AIR-TIGHTNESS 222
4.9.3 THERMAL TRANSMITTANCE 223
4.9.4 TRANSIENT RESPONSE 225
4.9.5 MOISTURE TOLERANCE 226
4.9.5.1 BUILT-IN MOISTURE 226
4.9.5.2 RAIN 226
4.9.5.3 RISING DAMP 226
4.9.5.4 HYGROSCOPIC MOISTURE AND SURFACE CONDENSATION 226
4.9.5.5 INTERSTITIAL CONDENSATION 226
4.10 REFERENCES 233
5 HEAT-AIR-MOISTURE MATERIAL PROPERTIES 237
5.1 INTRODUCTION 237
5.2 DRY AIR AND WATER 238
5.3 BUILDING AND ISOLATING MATERIALS 239
5.3.1 THERMAL PROPERTIES 239
5.3.1.1 DEFINITIONS 239
5.3.1.2 LIST OF DESIGN VALUES, NON-CERTIFIED MATERIALS (ISO 10456) 239
5.3.1.3 DESIGN VALUES ACCORDING TO THE STANDARD NBN B 62-002 (EDITION
2001) 244 5.3.1.4 MEASURED DATA 253
5.3.2 AIR PROPERTIES 261
5.3.2.1 DESIGN VALUES 261
5.3.2.2 MEASURED DATA 261
5.3.3 MOISTURE PROPERTIES 271
5.3.3.1 DESIGN VALUES (ISO 10456) 271
5.3.3.2 MEASURED DATA 276
5.3.4 RADIANT PROPERTIES 295
5.4 REFERENCES 296
APPENDIX 297
|
any_adam_object | 1 |
author | Hens, Hugo |
author_GND | (DE-588)133047016 |
author_facet | Hens, Hugo |
author_role | aut |
author_sort | Hens, Hugo |
author_variant | h h hh |
building | Verbundindex |
bvnumber | BV036748141 |
classification_rvk | ZI 4050 |
classification_tum | ARC 100f |
ctrlnum | (OCoLC)699255415 (DE-599)DNB998580791 |
dewey-full | 693.8 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 693 - Specific materials & purposes |
dewey-raw | 693.8 |
dewey-search | 693.8 |
dewey-sort | 3693.8 |
dewey-tens | 690 - Construction of buildings |
discipline | Architektur Bauingenieurwesen |
format | Book |
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id | DE-604.BV036748141 |
illustrated | Illustrated |
indexdate | 2024-07-09T22:47:12Z |
institution | BVB |
isbn | 9783433029626 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-020665453 |
oclc_num | 699255415 |
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owner_facet | DE-M347 DE-91 DE-BY-TUM DE-898 DE-BY-UBR DE-Aug4 DE-92 DE-861 DE-83 DE-525 |
physical | XIV, 308 S. Ill., graph. Darst. |
publishDate | 2011 |
publishDateSearch | 2011 |
publishDateSort | 2011 |
publisher | Ernst |
record_format | marc |
spelling | Hens, Hugo Verfasser (DE-588)133047016 aut Applied building physics boundary conditions, building performance and material properties Hugo Hens Berlin Ernst 2011 XIV, 308 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Bauphysik (DE-588)4004910-3 gnd rswk-swf Bauphysik (DE-588)4004910-3 s DE-604 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020665453&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Hens, Hugo Applied building physics boundary conditions, building performance and material properties Bauphysik (DE-588)4004910-3 gnd |
subject_GND | (DE-588)4004910-3 |
title | Applied building physics boundary conditions, building performance and material properties |
title_auth | Applied building physics boundary conditions, building performance and material properties |
title_exact_search | Applied building physics boundary conditions, building performance and material properties |
title_full | Applied building physics boundary conditions, building performance and material properties Hugo Hens |
title_fullStr | Applied building physics boundary conditions, building performance and material properties Hugo Hens |
title_full_unstemmed | Applied building physics boundary conditions, building performance and material properties Hugo Hens |
title_short | Applied building physics |
title_sort | applied building physics boundary conditions building performance and material properties |
title_sub | boundary conditions, building performance and material properties |
topic | Bauphysik (DE-588)4004910-3 gnd |
topic_facet | Bauphysik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020665453&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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